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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Determination of primary structure and microheterogeneity of a β-amyloid plaque-specific antibody using high-performance LC–tandem mass spectrometry
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Determination of primary structure and microheterogeneity of a β-amyloid plaque-specific antibody using high-performance LC–tandem mass spectrometry

机译:高效液相色谱-串联质谱法测定β-淀粉样蛋白斑特异性抗体的一级结构和微异质性

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摘要

Using the bottom-up approach and liquid chromatography (LC) in combination with mass spectrometry, the primary structure and sequence microheterogeneity of a plaque-specific anti-β-amyloid (1–17) monoclonal antibody (clone 6E10) was characterized. This study describes the extent of structural information directly attainable by a high-performance LC–tandem mass spectrometric method in combination with both protein database searching and de novo sequence determination. Using trypsin and chymotrypsin for enzymatic digestion, 95% sequence coverage of the light chain and 82% sequence coverage of the heavy chain of the 6E10 antibody were obtained. The primary structure determination of a large number of peptides from the antibody variable regions was obtained through de novo interpretation of the data. In addition, N-terminal truncations of the heavy chain were identified as well as low levels of pyroglutamic acid formation. Surprisingly, pronounced sequence microheterogeneities were determined for the CDR 2 region of the light chain, indicating that changes at the protein level derived from somatic hypermutation of the Ig VL genes in mature B-cells might contribute to unexpected structural diversity. Furthermore, the major glycoforms at the conserved heavy chain N-glycosylation site, Asn-292, were determined to be core-fucosylated, biantennary, complex-type structures containing zero to two galactose residues.
机译:使用自下而上的方法和液相色谱(LC)结合质谱分析,对噬菌斑特异性抗β淀粉样蛋白(1-17)单克隆抗体(克隆6E10)的一级结构和序列进行了微观异质性分析。这项研究描述了通过高效液相色谱串联质谱法结合蛋白质数据库搜索和从头测序确定可直接获得的结构信息的范围。使用胰蛋白酶和胰凝乳蛋白酶进行酶消化,获得了6E10抗体轻链的95%序列覆盖率和重链的82%序列覆盖率。通过数据的从头解释获得了来自抗体可变区的大量肽的一级结构测定。另外,鉴定出重链的N-末端截短以及焦谷氨酸形成的低水平。出乎意料的是,确定了轻链CDR 2区域的明显的序列异质性,表明成熟B细胞中Ig VL 基因体细胞超突变产生的蛋白质水平变化可能有助于意外的结构多样性。此外,在保守的重链N-糖基化位点Asn-292上的主要糖型被确定为核心岩藻糖基化,双触角,复杂类型的结构,包含零至两个半乳糖残基。

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